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聚苯乙烯微/纳米塑料对拟南芥的生理生化影响。

Physiological and biochemical effects of polystyrene micro/nano plastics on Arabidopsis thaliana.

机构信息

School of Environment, Hangzhou Institute for Advanced Study, University of Chinese Academy of Sciences, Hangzhou 310024, China; Key Laboratory of Pollution Exposure and Health Intervention of Zhejiang Province, College of Biological and Environment Engineering, Zhejiang Shuren University, Hangzhou 310015, China; College of Environment, Zhejiang University of Technology, Hangzhou 310032, China.

Key Laboratory of Pollution Exposure and Health Intervention of Zhejiang Province, College of Biological and Environment Engineering, Zhejiang Shuren University, Hangzhou 310015, China.

出版信息

J Hazard Mater. 2024 May 5;469:133861. doi: 10.1016/j.jhazmat.2024.133861. Epub 2024 Feb 23.

Abstract

Microplastics have garnered global attention due to their potential ecological risks. Research shows micro/nano-plastics pollution has adverse effects on plant growth, development, and physiological characteristics. However, the mechanisms underlying these effects remain unclear. The study examined the effects of polystyrene micro/nano-plastics with varying sizes and concentrations on different physiological and biochemical markers of A. thaliana. The indicators assessed include seed viability, growth, chlorophyll content, accumulation of root reactive oxygen species, and root exudates. Using fluorescence labeling, we investigated the absorption and translocation processes of micro/nano-plastics in A. thaliana. We also performed transcriptomic analysis to better understand the particular mechanisms of micro/nano-plastics. It indicated that micro/nano-plastics had an adverse effect on seed germination, especially under high concentration and small particle size treatments. This effect diminished with prolonged exposure. High concentrations at 50 nm and 100 nm treatment groups significantly inhibited the growth. Conversely, low concentrations of 1000 nm had a promoting effect. Exposure to micro/nano-plastics potentially resulted in decreased chlorophyll content, the accumulation of HO in roots, and stimulated root secretion of oxalic acid. Through transcriptomic analysis, the gene expression linked to micro/nano-plastic treatments of varying sizes enriched multiple metabolic pathways, impacting plant growth, development, environmental adaptation, metabolism, pigment synthesis, and stress response.

摘要

由于微塑料潜在的生态风险,它们已引起全球关注。研究表明,微/纳米塑料污染对植物的生长、发育和生理特性有不利影响。然而,这些影响的机制尚不清楚。本研究考察了不同大小和浓度的聚苯乙烯微/纳米塑料对拟南芥不同生理生化标志物的影响。评估的指标包括种子活力、生长、叶绿素含量、根活性氧的积累以及根分泌物。我们使用荧光标记研究了微/纳米塑料在拟南芥中的吸收和转运过程。我们还进行了转录组分析,以更好地了解微/纳米塑料的特定机制。结果表明,微/纳米塑料对种子萌发有不利影响,特别是在高浓度和小粒径处理下。这种影响随着暴露时间的延长而减弱。在 50nm 和 100nm 处理组中,高浓度显著抑制了生长。相反,1000nm 的低浓度则有促进作用。暴露于微/纳米塑料可能导致叶绿素含量降低、根中 HO 的积累,并刺激根分泌草酸。通过转录组分析,与不同大小的微/纳米塑料处理相关的基因表达富集了多个代谢途径,影响植物的生长、发育、环境适应、代谢、色素合成和应激反应。

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